CN215912650U - High-flux cymbidium plant planting pot - Google Patents
High-flux cymbidium plant planting pot Download PDFInfo
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- CN215912650U CN215912650U CN202121835990.2U CN202121835990U CN215912650U CN 215912650 U CN215912650 U CN 215912650U CN 202121835990 U CN202121835990 U CN 202121835990U CN 215912650 U CN215912650 U CN 215912650U
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Abstract
The invention relates to a high-flux cymbidium plant planting pot. The main body of the highly permeable orchid planting pot is a polygonal or circular pot body which is divided into an upper half part and a lower half part. The top of the highly permeable orchid planting pot is provided with a structural platform, and a plurality of water diversion ports are uniformly distributed on the platform. A plurality of multi-functional sockets are evenly distributed on the inner side wall of the upper half part of the pot body. The water inlet and the multifunctional faucet are not intersected. The lateral wall of the lower half part of the highly permeable orchid planting pot is provided with a plurality of inward arched reinforcing ribs, and the reinforcing ribs are uniformly distributed with permeable grids. The bottom of the highly permeable orchid planting pot is provided with a permeable bottom structure.
Description
Technical Field
The invention relates to the field of agriculture and horticulture, in particular to a high-flux orchid planting pot.
Background
The national orchid has been deeply pursued by the flower friends of China. However, since the orchid has a strict requirement on humidity, and the common soil has over-strong water storage capacity and insufficient air permeability, the orchid is usually planted in soil such as cobblestone, coconut shell and bark. However, the soil such as cobblestone, coconut shell, bark and the like can only avoid the problem of over-wetting, and the requirement on ventilation can be met only by matching with a planting container. Therefore, a pot for orchid, which has both excellent air and water permeability, is very important for orchid planting.
The flower pots special for orchids commonly used in the market usually only have a plurality of holes punched on the side wall and the bottom of a common ceramic or plastic flower pot for ventilation, but the ventilation requirement of orchids cannot be met only by a few ventilation holes, and particularly, after long-time planting, barks and coconut shells in the planting materials are weathered into mud, which causes poor ventilation; the side wall of the flowerpot is provided with a large number of air holes, so that the attractiveness and integrity of the flowerpot are affected; in the use, the bleeder vent of lateral wall and bottom still can cause flowerpot lateral wall and bottom structure fragile, causes the damage in the handling, influences flowers safety then.
The high-flux orchid planting pot provides a higher penetrating effect under the conditions of plant containing and soil breeding of the foundation, and prevents roots of orchids from rotting due to air impermeability. Simultaneously, a multifunctional socket and a water diversion port are provided, and the diversity of the use functions of the multifunctional socket and the water diversion port is increased.
Disclosure of Invention
The invention relates to a high-flux cymbidium plant planting pot.
The main body of the highly permeable orchid planting pot is a polygonal or circular pot body which is divided into an upper half part and a lower half part.
The top of the highly permeable orchid planting pot is provided with a structural platform, and a plurality of water diversion ports are uniformly distributed on the platform. A plurality of multi-functional sockets are evenly distributed on the inner side wall of the upper half part of the pot body. The water inlet and the multifunctional faucet are not intersected.
The lateral wall of the lower half part of the highly permeable orchid planting pot is provided with a plurality of inward arched reinforcing ribs, and the reinforcing ribs are uniformly distributed with permeable grids.
The bottom of the highly permeable orchid planting pot is provided with a permeable bottom structure, the permeable bottom structure can be a permeable groove or a permeable terrace, and the permeable groove and the permeable terrace can be contained simultaneously. The air and water permeable grooves are arched grooves which are convex upwards, and air and water permeable holes are uniformly arranged on the grooves; the permeable terraced platform is an upward convex terraced platform, and permeable holes are uniformly formed in the terraced platform.
The high-permeability orchid planting pot can be made of plastic, ceramic or other materials.
Drawings
The pot body of the high-permeability orchid planting pot can be a circular pot or a polygonal pot. For clarity of illustration and display, the hexagonal basins are used as examples in the description and the drawings.
The attached figure 1 of the specification is a schematic view of a high-permeability orchid planting pot, 11 is a structural platform, 12 is a multifunctional socket, 13 is a water diversion port, 14 is an arched reinforcing rib, and 15 is a permeable grid.
Description figure 2 is a schematic top view of a high-flux orchid plant pot. 21 is structural platform, 22 is multi-functional socket, 23 is the inlet, 24 is the arch strengthening rib, 25 is ventilative check that permeates water, 26 is the ventilative groove of permeating water of bottom arch, and 27 is the ventilative terrace that permeates water in bottom.
Description accompanying figure 3 is a schematic view of a high-flux orchid plant pot from the bottom. 31 is structural platform, 32 is the multi-functional socket of angle of looking up, 33 is the inlet, 34 is the arch strengthening rib, 35 is ventilative check that permeates water, 36 is the ventilative groove of permeating water of arch, 37 is the ventilative terrace that permeates water in bottom.
Description figure 4 is a schematic side section view of a high-flux orchid planting pot when a water diversion port is used. 41 is a structural platform, 42 is a water diversion hole, 43 is a water absorption cotton thread indication, 44 is an arch-shaped reinforcing rib, 45 is an air and water permeable grid, 46 is a soil indication, 47 is an arch-shaped air and water permeable groove, and 48 is a bottom air and water permeable terrace.
Description figure 5 is a schematic side cross-sectional view of a high-flux orchid plant pot when a multifunctional socket is used. 51 is structural platform, and 52 is multi-functional socket, and 53 are the horticulture and use the steel wire to indicate, and 54 are arch strengthening rib, and 55 are ventilative check of permeating water, 56 are ventilative groove of permeating water of arch, and 57 are ventilative permeable terraced platforms in bottom.
Description figure 6 is a schematic side cross-sectional view of a high-flux orchid planting pot using a gardening steel wire and a heat-insulating cloth. 61 is a high-flux orchid planting pot, 62 is a gardening steel wire, and 63 is a heat-insulating cloth.
Detailed Description
The soil 46 such as carpolite, bark, coconut shell, etc. is placed in a highly permeable orchid planting pot, and the root system of the orchid is buried in the soil 46.
In the planting process, water and fertilizer can be directly poured into the breeding soil 46. When the absorption rate of the culture soil reaches the maximum value, the excess water and fertilizer can seep out from the air and water permeable structure at the bottom (which comprises the air and water permeable groove 48 and the air and water permeable step 47 in the illustration of the description) and also seep out from the air and water permeable grids 45 on the arched reinforcing ribs 44 of the side walls to prevent the roots of the plants from rotting.
The air and water permeable grids 45 on the arched reinforcing ribs 44 ensure that the air flowability is not damaged. During planting, air flows through the permeable cells in the soil 46 to ensure that the soil humidity remains in an appropriate state and to ensure that sufficient oxygen demand is available from the air roots.
The user can arrange one end of the water absorbing cotton thread 43 into the breeding soil 46 through the water diversion hole 42 and immerse the other end in the water fertilizer according to the requirement, and the water fertilizer is introduced into the breeding soil by using the water absorbing cotton thread 43, as shown in the attached figure 4 in the specification.
The user can insert the gardening wire 53 into the multi-functional socket 52 according to the requirement to guide the growth direction of the orchid, as shown in the specification and the attached figure 5. According to the requirement, the gardening steel wire 62 can be inserted into the multifunctional socket 52 for shape correction, and a simple small-sized greenhouse is manufactured after being covered with heat-preservation cloth 63, so that the plants are protected from being invaded by cold tides, as shown in the attached figure 6 of the specification.
The high-flux cymbidium plant planting pot is simple to use and high in universality.
The structure platform at the top provides a force application point, and a user can carry the planting pot stably and conveniently.
The gardening steel wire is inserted into the multifunctional socket, so that the condition that the roots of orchids are damaged due to the fact that the gardening steel wire needs to be inserted into the breeding soil when the gardening steel wire is used conventionally can be avoided.
The arched reinforcing ribs arranged on the side wall are uniformly and densely distributed with air permeable grids. The breeding soil applies force from inside to outside due to gravity factors, the reinforcing ribs are arched and inward, pressure of the breeding soil on the side wall can be completely offset, and the dense air permeable grids can not cause the side wall structure to be fragile, so that the high-permeability orchid planting pot is damaged.
The bottom of the permeable structure is mainly provided with an upward convex permeable groove and a permeable terrace. Breed soil and can the downward application of force because of gravity factor, no matter ventilative water permeable tank still ventilative water permeable step can provide ascending power for the bottom of high-pass orchid planting basin, offsets with the gravity of breeding soil self, ensures that the ventilative hole of permeating water of intensive distribution can not cause the bottom structure fragile to lead to high-pass orchid to plant the basin and damage.
The above description and drawings are not intended to limit the form and style of the product, and any suitable changes or modifications therein by those skilled in the art should be considered as not departing from the scope of the present patent.
Claims (8)
1. The utility model provides a basin is planted to high pass orchidaceae plant, comprises structure platform, water inlet, multi-functional socket, arch strengthening rib, ventilative check and ventilative bottom construction that permeates water, its characterized in that: the pot body of the highly permeable orchid planting pot is divided into an upper half part and a lower half part; a structural platform is arranged at the top of the highly permeable orchid planting pot, and a plurality of water diversion ports are uniformly distributed on the platform; a plurality of multifunctional spigots are uniformly distributed on the inner side wall of the upper half part of the pot body, and the water diversion port is not intersected with the multifunctional spigots; the lateral wall of the lower half part of the highly permeable orchid planting pot is provided with a plurality of inward arched reinforcing ribs, the reinforcing ribs are uniformly distributed with permeable grids, and the bottom of the highly permeable orchid planting pot is provided with a permeable structure.
2. The highly permeable orchidaceae plant pot of claim 1, wherein: the high-permeability orchid planting pot main body can be a circular pot body.
3. The highly permeable orchidaceae plant pot of claim 1, wherein: the high-permeability orchid planting pot main body can be a polygonal pot body.
4. The highly permeable orchidaceae plant pot of claim 1, wherein: the high-permeability orchid planting pot can be made of plastics.
5. The highly permeable orchidaceae plant pot of claim 1, wherein: the high-permeability orchid planting pot can be made of ceramics.
6. The highly permeable orchidaceae plant pot of claim 1, wherein: the permeable structure can be a permeable groove which is an upward convex arched groove, and permeable holes are uniformly arranged on the groove.
7. The highly permeable orchidaceae plant pot of claim 1, wherein: the permeable structure can be a permeable terrace, which is an upward convex terrace, and the permeable holes are uniformly arranged on the terrace.
8. The highly permeable orchidaceae plant pot of claim 1, wherein: the permeable structure can simultaneously comprise a permeable groove and a permeable terrace.
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CN202121835990.2U CN215912650U (en) | 2021-08-08 | 2021-08-08 | High-flux cymbidium plant planting pot |
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CN202121835990.2U CN215912650U (en) | 2021-08-08 | 2021-08-08 | High-flux cymbidium plant planting pot |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112167037A (en) * | 2019-07-01 | 2021-01-05 | 欧亚农技有限公司 | Water culture tray |
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2021
- 2021-08-08 CN CN202121835990.2U patent/CN215912650U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN112167037A (en) * | 2019-07-01 | 2021-01-05 | 欧亚农技有限公司 | Water culture tray |
CN112167037B (en) * | 2019-07-01 | 2023-12-22 | 欧亚农技有限公司 | Shui Peituo disk |
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